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- W2138891775 abstract "We report the rational synthesis of one-dimensional SnO2 nanowires (SnO2NWs) via a Sn-catalyzed vapor–liquid–solid (VLS) growth mechanism, in which Sn nanoparticles can direct the oriented growth of SnO2NWs at high temperature. I–V measurement of a field effect transistor made of individual SnO2NWs exhibits typical n-type semiconducting characteristics with an electron mobility and concentration of 14.36 cm2 V − 1 s − 1 and 1.145 × 1017 cm − 3, respectively. The SnO2NW-based photodetector shows a high sensitivity to UV light radiation, and a fast light response speed of millisecond rise time/fall time with excellent stability and reproducibility, whereas it is nearly blind to illumination with wavelengths in the visible range. Detailed reasons to account for the detection selectivity and rapid response speed are proposed. The generality of the above results suggests that our SnO2NW photodetectors have potential application in nanoscaled optoelectronic devices." @default.
- W2138891775 created "2016-06-24" @default.
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- W2138891775 creator A5044887993 @default.
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- W2138891775 date "2011-11-04" @default.
- W2138891775 modified "2023-09-23" @default.
- W2138891775 title "Sn-catalyzed synthesis of SnO<sub>2</sub>nanowires and their optoelectronic characteristics" @default.
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- W2138891775 doi "https://doi.org/10.1088/0957-4484/22/48/485701" @default.
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